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Structure-borne sound design of typical hull base and underwater model test

机译:典型船体基座的结构声设计和水下模型测试

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摘要

Purpose - The structure-borne sound generated by power equipment can be isolated effectively through vibration absorber under hull base structures. The practical vibration isolation performance is limited due to the weight, size and cost. The dramatic attenuating wave propagation characteristic of hull base without adding weight is essential to the vessel acoustic stealth. Design/methodology/approach - The characteristics of vibration wave propagated from typical shape base link structures have been investigated according to impedance mismatch and wave conversion in non-homogeneous structure. The hull base is simplified to three degrees of freedom damped system through the mechanical impedance method. The influence of blocking mass weight, as well as location properties to the base vibration isolation performance have been discussed. Furthermore, the structure-borne sound design of a typical hull base is carried out. Findings - The impedance mismatch of the hull base is further increased by the comprehensive use of high transmission loss base link structures, blocking mass as well as damping layer. The effectiveness of structure-borne sound design is verified through numerical calculation together with underwater model test. The test data show that the noise has been reduced larger than 3dB. Originality/value - The paper describes what is believed to be the first application of the high transmission loss base in hull structures based on the literature survey. The method of structure-borne sound design of a typical hull base can be applied in different types of vessels.
机译:目的-可以通过船体基础结构下的减振器有效地隔离动力设备产生的结构声。由于重量,尺寸和成本,实际的隔振性能受到限制。在不增加重量的情况下,船体底部剧烈的衰减波传播特性对船舶的声音隐身性至关重要。设计/方法/方法-根据非均质结构中的阻抗失配和波转换,研究了从典型形状基础连杆结构传播的振动波的特性。通过机械阻抗方法,船体基座简化为三自由度阻尼系统。讨论了阻塞质量重量以及位置属性对基础隔振性能的影响。此外,进行了典型船体基座的结构声设计。研究结果-通过广泛使用高传输损耗的基础连杆结构,阻塞质量以及阻尼层,进一步增加了船体基座的阻抗失配。通过数值计算和水下模型测试验证了结构声设计的有效性。测试数据表明,噪声已降低了3dB以上。原创性/价值-根据文献调查,本文描述了高传输损耗基础在船体结构中的首次应用。典型的船体基座的结构声设计方法可以应用于不同类型的船舶。

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